Crossref journal-article
AIP Publishing
The Journal of Chemical Physics (317)
Abstract

The formulation of the three-body problem presented in Paper I of this series leads to a set of second-order linear simultaneous differential equations. A numerical procedure for the solution of these equations is described, and is used to compute nonadiabatic energies for the first few rotation—vibration levels of 2Σg H2+, 2Σ HD+, and 2Σg D2+. The dipole moment of 2Σ HD+ is given, together with matrix elements for rotation—vibration transitions. The method is also applied to obtain approximate binding energies of two-electron atoms and various mesonic systems from two-center wavefunctions.

Bibliography

Hunter, G., & Pritchard, H. O. (1967). Born—Oppenheimer Separation for Three-Particle Systems. III. Applications. The Journal of Chemical Physics, 46(6), 2153–2158.

Authors 2
  1. G. Hunter (first)
  2. H. O. Pritchard (additional)
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Dates
Type When
Created 20 years, 7 months ago (Jan. 5, 2005, 11:35 p.m.)
Deposited 1 year, 6 months ago (Feb. 8, 2024, 8:51 p.m.)
Indexed 1 year, 6 months ago (Feb. 10, 2024, 1:06 a.m.)
Issued 58 years, 5 months ago (March 15, 1967)
Published 58 years, 5 months ago (March 15, 1967)
Published Print 58 years, 5 months ago (March 15, 1967)
Funders 0

None

@article{Hunter_1967, title={Born—Oppenheimer Separation for Three-Particle Systems. III. Applications}, volume={46}, ISSN={1089-7690}, url={http://dx.doi.org/10.1063/1.1841017}, DOI={10.1063/1.1841017}, number={6}, journal={The Journal of Chemical Physics}, publisher={AIP Publishing}, author={Hunter, G. and Pritchard, H. O.}, year={1967}, month=mar, pages={2153–2158} }